200款Prius的升压转换器
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因此,请与派克合作,准备改变这一切吧!/precisionfluidics 1 603 595-1500目录页T2-05Helix124高效和紧凑型 13.5mm 宽泵 – 高达 800 mLPM高压泵 – 超过5.5 LPM 和高达100 PSI 的压力T2-0320高性能与尺寸比率泵 – 高达2.5 LPMLTC 系列76液体系列传送泵 – 高达 650 mLPMEZ 底座92振动隔离安装系统小型活塞泵(空气)微型泵(空气/气体)微型泵(液体)T2-0494超紧凑型、高效泵 – 高达 7.5LPMBTC-IIS 系列62应用广泛的多功能双头泵系列产品 – 高达 11 LPMBTC 系列52应用广泛的多功能泵系列产品 – 高达6 LPMLTC-IIS 系列84液体系列双头传送泵 – 高达1.5 LPMCTS 系列BTX-Connect 2836高性能紧凑型 20 mm 宽泵 – 高达 2.5 LPM多功能双头和单头泵系列,适合多种应用-高达10 LPMTTC 系列74紧凑、高效、低压泵 – 高达 6 LPMTTC-IIS 系列84紧凑、高效、低压双头泵 - 高达 11 LPM附件4Helix 微型高压泵高达100 PSI (6.9 bar)压力Parker Helix 是一款紧凑型高压泵,旨在实现小型即时临床护理仪器。
Helix 可在挑战性的高海拔环境和无法使用外部压缩空气的应用中实现高压操作。
Helix 泵可提供5.5 LPM 以上的流量和高达100 PSI (6.9 bar)的压力,为性能至关重要且空间有限的台式诊断设备提供了出色的解决方案。
• 集成了用于卸荷的X 阀,可实现高压重启• 内部飞轮可在高压下低速运行• 无油活塞• 简单的安装特性• 带有推入式接头的快速流体连接• 符合RoHS 指令和REACH 标准产品特性• 液上空气• 气动驱动•微流控芯片• 即时临床护理检验• 分子诊断• 核酸纯化•基因组学典型应用典型市场产品规格物理特性电子5微型隔Helix 微型高压泵典型流量曲线• 曲线展示了0.080"偏移泵的流量性能• 使用5.0 Vdc 控制输入时,泵将以大约4400 RPM 的转速和高达8.5 LPM的流量的状态运行,但不建议连续工作。
SCHRACK继电器价格SCHRACK继电器批发Schrack公司成立于1920年。
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50/60HZ,43/40W编码器25-20KW7.30/1000接触器PLMU11 200-480VAC,50/60HZ,10A加强型镀铝反光镜45336传感器VF05MP 5MPA可调电阻滤波器3VNF200/400-50-AA Freudenberg EPDM 70减压阀DRV 424-1"减压阀DRV 408-1/2″气缸GD30-F04齿轮泵SNP2NN/8,0RN01BAP1F4F4NNNN/NNNNN 电机C4T17NC46A轴向柱塞泵PVH131Q1C-RSM-1S-10-C25-31 EUCHNER EGT12A5000泵PVM045ER05CS02AAA07000000AOA消音器44AW56 04-3510-99硬内膜08-1010-55模块61E026559模块61E026555编码器725ISS1000QHV1SNSYNN互感器ASK61.4 19073-800/5A 15VA K1.1压缩空气加热器A39FTH钻头010316滤芯PI 23100 RNSMX 10 PI 23100 RN PS10滤芯PI 8411 DRG 60滤芯852 243 SMX 10 NBR滤芯PI 3111 PS 10压差传感器TPE-1475-24位置传感器RHM0150MF051A01 RHM0150MH051A01 螺母MSR 105*2压力变送器TPT4636-10M-12/18调速器ER340ILV60接近开关9962-5600温度显示外表DS13-NA31/WOR-03联轴器R42.55-22.22F电机S9I180GT-ECE(带刹车)弹性体配BOWEX M65 prebore (Φ21mm)使用护目镜F14.T5H04.5000接线盒D9041阀NCCD-LCN编码器1H740.1000A63.01033.SLI1监控软件117000010磁致伸缩位移传感器RHM1350MD531P102波段开关DPN02 003N20RCB波段开关DPN02 020H20RCB过滤袋PE-50-P02H-30L PE-50-P02H-301电磁阀8615NN020S08BDF 230/50/60称重传感器MOD350/300kg减速机DZ 23-3FABC隔膜泵AOD.5-PBBP-N修理包配7786-A5油脂泵滤芯PI 1030 KS MIC 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1680MM扩展器124030002电缆124080003电源130010004编码器E2-4000-394-IE-H-3-3 编码器E2-1024-394-IE-D-3-3 连接器CA-C5-SH-NC-3电机63 0.18KW 1400rpm 操纵器EPL 10201电压表RQ 72E电压表RQ 96E继电器02.03.226报器YL5 AXL05电机MOT.3-TFC71B-2电机MOT3-TFCP132M-4 开关K3M160/32电压表RQ 96E电压表RQ 96E电压表RQ 96E电压表RQ 72E电压表RQ 72E电压表RQ 96E电机AG80ZBA4烧录器PL-USB-BLASTER-RCN交换机HP2524-J4813A J9782A HP 2530-24SWITCH电磁阀EH22H7DCCML 24DFESTO DGPL-32-500-PPV-A-KF-B压力开关LM2 CTA = 390 SC气压缸(膜片式)7200773 10BAR减速箱A102UH25P90模块TD162N16KOF线性变送器951A-C1-1320-X-X-C10 953A-C4-1320-N1.5-D2.25-C10 电磁安全开关AZM170-02ZRKA 24VDC气动抱轴装置MKR-2500-A隔膜阀690 25D 7 1141 1/N 0101+0324真空传感器VHR3-A3-199.9hPa(abs)N-4传感器060-3587-03电机BL58-50W 24V可控硅T1989N16TOF3123V2塑料胶管DIN73372 :6*1.5 PA12HL 071991227滤芯HP0372A25AN气动泵9911-H1传感器CPP-45B 5KΩ润滑泵PEK-A-1-3.0-0-B-0-S-V电源E-TOP 18 Power-supply 5V电源E-TOP 60 Power-supply 24V电源E-TOP 240 Power-supply 24V模块PM-8200继电器SUW1001 AC 230V 50-60HZ连接模块BICCON BX13电磁阀420 120 5060编码器HA62525000340氧分仪3300TA-EU称重传感器CF85 100.40MA EVO电磁阀8223G023 220VElfin 050F20ELFIN 050F02气动执行器DA60-F04;P.MAX=8.4BAR,T.MAX=+80度串口线CAB-327VIPA LM 331-7BF70-VIPABruel&Kjaer UA-0254Bruel&Kjaer UA-0469传感器STM32A软件PROscan Active Basic LizenzSMW AUTOBLOK LPS-XS A16排气滤芯E0860EFFINE AUTOMATION FDBSS3S240650电磁水阀UR3K-020GM085-SR电源装置FLEX50048A 115-230VAC/48VDC油杯M120 S032转位锁销CL_22018_TIP转位锁销CL_22032_TIPB阀CBEA-LHN-ZNV/T氧气传感器TX6373.03.12.46.257 TX6373.03.12.257.25 开关CAD11.A214-603E马达C21-H-175X流量计TP-HP40G-S1-B30-04选择开关DH10-1 A-G925-603*KN1+S1M470/A1A6 油流监测仪OMNI-F-008HK028S滤芯PI 4215 PS VST 25 77680531位移传感器DCTH200AG压力开关B12CN压力开关B01C变送器M105-DV1 IN:0-60mVDC OUT:4-20mADC电机3-MOT BN63B4便携式密度测定仪DMA35 EX网关IBH LINK S7++直流驱动器4KS-M240/20 240VDC编码器DATA:11I8,SERIE:4006,IMP:50离合器附件5103-101-002连接器KPT06A14-5P阀SQE-1离心泵TF40-85/15330 (1.5KW)传感器支架(带传感器)82M-000040C8传感器支架(带传感器)82M-000000C8开关DH200+DHK32050轴承座64652020模块323-1BL00 DI16/DO16*DC24V滑块MRW45-D-G0-V3-R1-CN-S91-S99-LN DAYTON 3FRF5编码器模块DNDS 1EGV7C输出模块DNDS PMG光电开关S50-ML-5-G00-XG光电开关S50-MH-5-C01-PP光电开关S50-ML-5-F01-PP水导油槽测温RTD S57PA376Z6水导瓦测温RTD S57PA226Z6开关CG4 A214-600FS1主轴密封测温RTD S57PA63Z6电源接头620001289输入输出接头620001293拉力传感器LD 1-A1-200 KG液位信号器FDBSS3S230600端板和隔板769-321超声波传感器dbk+4/Sender/M12/K12线/1针基础接线端子769-2572线/1针基础接线端子769-251绝缘止动件769-470WMB标记793-504操作工具210-490开关KG80 K900-600 VE+K2 M510A2CA-B+K2 H010/A22-VE+K2 M160/3+S1 M280D/A23SMURR 7000-9MURR 7000-8MURR 7000-1MURR 7000-1MURR 7000-1MURR 7000-1MURR 7000-1MURR 7000-0MURR 7000-1MURR 7000-4MURR 7000-4。
Open Energy for AllSingle-phase MicroinverterHMS-1600-4T HMS-1800-4T HMS-2000-4TUSER MANUALAbout MicroinverterThis system is composed of a group of microinverters that convert direct current (DC) into alternating current (AC) and feed the power to the public grid. The system is designed for 4-in-1 microinverters, i.e., one microinverter is connected with four PV modules.Each microinverter works independently so as to guarantee the maximum power generation of each PV module. This setup is highly flexible and reliable as the system enables direct control of the production of each PV module.About the ManualThis manual contains important instructions for HMS-1600-4T/HMS-1800-4T/HMS-2000-4T microinverters and users shall read in its entirety before installing or commissioning the equipment. For safety reasons, only qualified technicians who have received training or demonstrate relevant skills can install and maintain this microinverter under the guidance of this document.Other InformationProduct information is subject to change without notice. User manual will be updated regularly, so please refer to Hoymiles official website at for the latest version.CONTENTS1. Important Notes 41.1 Product Range 41.2 Target Group 41.3 Symbols Used 41.4 Radio Interference Statement 42. About Safety 52.1 Important Safety Instructions 52.2 Explanation of Symbols 63. About Product 73.1 About PV Microinverter System 73.2 About Microinverter 73.3 About 4-in-1 Unit 83.4 About Sub-1G Technology 83.5 Highlights 83.6 Terminals Introduction 93.7 Dimensions (mm) 94. Installation Preparation 104.1 Position and Space Required 104.2 Connecting Multiple PV Modules to Microinverter 104.3 Installation Tools 114.4 AC Branch Circuit Capacity 114.5 Precautions 125. Microinverter Installation 135.1 Accessories 135.2 Installation Steps 136. Troubleshooting 176.1 Troubleshooting List 176.2 LED Indicator Status 206.3 On-site Inspection (For qualified installers only) 216.4 Routine Maintenance 216.5 Microinverter Replacement 227. Decommission 237.1 Decommission 237.2 Storage and Transportation 237.3 Disposal 238. Technical Data 249. Appendix 1: 259.1 Installation Map 2510. Appendix 2:2610.1 WIRING DIAGRAM – 230VAC SINGLE PHASE: 2610.2 WIRING DIAGRAM – 230VAC / 400VAC THREE PHASE: 2710.3 WIRING DIAGRAM –120VAC / 240VAC SPLIT PHASE: 2810.4 WIRING DIAGRAM – 120VAC / 208VAC THREE PHASE: 291. Important Notes1.1 Product RangeThis manual describes the assembly, installation, commissioning, maintenance and troubleshooting of the following models of Hoymiles Microinverter:· HMS-1600-4T· HMS-1800-4T· HMS-2000-4T*Note: “1600” means 1600 W. “1800” means 1800 W, “2000” means 2000 W.*Note: HMS-1600/1800/2000-4T is only compatible with Hoymiles gateway DTU-Pro-S and DTU-Lite-S.1.2 Target GroupThis manual is only for qualified technicians. For safety purposes, only those who have been trainedor demonstrate relevant skills can install and maintain this microinverter under the guidance of thisdocument.1.3 Symbols UsedThe safety symbols in this user manual are shown as below.1.4 Radio Interference StatementThis microinverter has been tested and complies with the requirements of CE EMC, meaning that it will not be affected by electromagnetic interference. Please note that incorrect installation may cause electromag-netic disturbances.You can turn the equipment off and on to see if radio or television reception is interfered by this equipment.If this equipment does cause harmful interference to radio or television, please try the following measures to fix the interference:1) Relocate other apparatus’ antenna.2) Move the microinverter farther away from the antenna.3) Separate the microinverter and the antenna with metal/concrete materials or roof.4) Contact your dealer or an experienced radio/TV technician for help.2. About Safety2.1 Important Safety InstructionsThe HMS-1600-4T/HMS-1800-4T/HMS-2000-4T microinverter is designed and tested according to interna-tional safety requirements. However, certain safety precautions must be taken when installing and operat-ing this inverter. The installer must read and follow all instructions, cautions and warnings in this installa-tion manual.2.2 Explanation of Symbols3. About Product3.1 About PV Inverter SystemA typical grid-tied PV inverter system includes PV modules, PV inverter, meter and power grid, as shownbelow. PV inverter converts the DC power generated by PV modules into AC power that meets the require-ments of the power grid. The AC power is then fed into the grid via meter.A PV moduleB PV inverterC Grid-connected metering deviceD Power grid3.2 About MicroinverterPV Microinverter is a module-level solar inverter that tracks the maximum DC power point of each PV module, which is known as Maximum Power Point Tracking (MPPT).This function of module-level MPPT means that when a PV module fails or is shaded, other modules will not be affected, boosting the overall power production of the system.Microinverter can monitor the current, voltage and power of each module to realize module-level data moni-toring.Moreover, microinverter only carries a few dozen volts of DC voltage (less than 80 volts), which reduces safety hazards to the greatest extent.Hoymiles microinverters feature module-level monitoring. Microinverter data are collected by DTU via wireless transmission and are sent to Hoymiles motoring platform S-Miles Cloud.3.3 About 4-in-1 UnitMicroinverters can be divided into 1-in-1, 2-in-1, 4-in-1, etc., depending on how many PV modules are con-nected to them. This means that the microinverter can connect to one module, two modules and four mod-ules respectively, as shown below.This manual is about Hoymiles 4-in-1 microinverter. With the output power up to 2000 VA, Hoymiles new HMS-2000 series rank among the highest for 4-in-1 microinverters.Each microinverter connects to four PV modules at most with independent MPPT and monitoring, enabling greater energy harvest and easier maintenance.3.4 About Sub-1G TechnologyHMS-2000 series of microinverter adopts the new Sub-1G wireless solution which enables more stable com-munication with Hoymiles gateway DTU. Sub-1G technology is particularly useful for PV microinverters and is different from 2.4GHz in that it has substantially longer range and better interference suppression perfor-mance.Range of Sub-1GHz wireless:Unlike Wi-Fi or Zigbee which both operate on the 2.4 GHz band, Sub-1GHz op-erates on the 868 MHz or the 915 MHz band. Generally speaking, Sub-1GHz wireless transmission covers 1.5 to 2 times longer distance than the 2.4GHz spectrum.Interference: Sub-1GHz wireless networking can handle interference better. This is because it operates on a lower frequency, so the communication between the microinverter and the DTU is more stable. As a result, it is especially useful in industrial or commercial PV power plants.Lower Power Consumption: Sub-1GHz wireless communication uses less power than Wi-Fi or Zigbee. Because of the long range and better interference suppression performance, Sub-1GHz networking is partic-ularly well-suited for rooftop PV power stations.3.5 Highlights- Maximum output power up to 1600/1800/2000 W- Peak efficiency 96.50%- Static MPPT efficiency 99.80%, Dynamic MPPT efficiency 99.76% in overcast weather- Power factor (adjustable) 0.8 leading……0.8 lagging- Sub-1G for stronger communication with DTU- High reliability: IP67 (NEMA 6) enclosure, 6000 V surge protection3.6 Terminals Introduction3.7 Dimensions (mm)4. Installation Preparation4.1 Position and Space RequiredPlease install the microinverter and all DC connections under the PV module to avoid direct sunlight, rain exposure, snow buildup, UV etc. The silver side of the microinverter should be up and facing the PV module.Leave a minimum of 2 cm of space around the microinverter enclosure to ensure ventilation and heat dissi-pation.*Note: In some countries, DTU will be required to meet local grid regulations (e.g. G98/99 for UK etc.)4.2 Connecting Multiple PV Modules to MicroinverterGeneral Guidelines:Note: The voltage of modules (considering the effect of local temperature) must not exceed the maximum input voltage of the microinverter. Otherwise, the microinverter may be damaged (refer to the Technical Data section to determine the absolute maximum input voltage).Single-phase Microinverter HMS-1600/1800/20004.3 Installation ToolsBesides tools recommended below, other auxiliary tools can also be used on site.ScrewdriverMultimeter Socket Wrench or Allen wrenchMarker pen Diagonal pliers Steel tap Wire cutters Cable tieWire stripper Torque and adjustable wrenchUtility knifeSafety glove Dust masks Protective gogglesSafety shoes4.4 AC Branch Circuit CapacityHoymiles HMS-1600-4T/HMS-1800-4T/HMS-2000-4T can be used with 12AWG or 10AWG AC Trunk Cable and the AC Trunk Connector which are provided by Hoymiles. The number of microinverters on each 12AWG or 10AWG AC branch shall not exceed the limit as shown below.Note:1. The number of microinverters that can be connected to each AC branch is determined by the ampacity (also known as current-carrying capacity) of the cable.2. 1-in-1, 2-in-1 and 4-in-1 microinverters can be connected to the same AC branch, as long as the total current does not exceed the ampacity specified in local regulations.4.5 PrecautionsThe equipment is installed based on the system design and the location of installation.Installation location shall meet the following conditions:The AC cable contains earth wire, so grounding can be done directly with it. For regions that have special requirements, we offer optional grounding brackets that can be used to complete the external ground-ing.Torque each grounding cleat screw to 2 N·m.Note:1. Microinverter installation and DC connections must be done under the PV module to avoid direct sunlight, rain exposure, snow buildup, UV etc.2. Leave a minimum of 2 cm of space around the microinverter enclosure to ensure ventilation and heat dissi-pation.3. Mounting torque of the 8 mm screw is 9 N·m. Do not over torque.4. Do not pull or hold the AC cable with your hand. Hold the handle instead.Step 2. Plan and Build the AC Trunk CableAC Trunk Cable is used to connect the microinverter to the power distribution box.A ) Select the appropriate AC Trunk Cable according to the spacing between microinverters. The connec-tors of the AC Trunk Cable should be spaced based on the spacing between microinverters to ensure that they can properly matched. (Hoymiles provides AC Trunk Cable with different AC Trunk Connec-tor spacing.)B ) Determine how many microinverters you plan to install on each AC branch and prepare AC TrunkConnectors accordingly.C ) Take out segments of AC Trunk Cable as you need to make AC branch.1 ) Disassemble the AC Trunk Connector and remove the cable.2 ) Install the AC Trunk End Cap at one side of AC Trunk Cable (the end of AC Trunk Cable).1. Tightening torque of the cap: 4.0±0.5 N·m. Please do not over torque.2. Torque of locking screw: 0.4±0.1 N·m.3. Do not damage the sealing ring in the AC Trunk Connector during disassembly and assembly.4. Wires used in Hoymiles Microinverter:D ) Repeat the above steps to make all the AC Trunk Cables you need. Then lay out the cable on the railas appropriate so that the microinverters can be connected to the Trunk connectors.B ) Connect the AC end cable to the distribution box, and wire it to the local grid network.Step 4. Create an Installation Map2. In case you need to remove the microinverter AC cable from AC Trunk Connector, insert the ACTrunk Port Disconnect Tool into the side of AC Sub Connector to complete the removal.Step 6. Energize the SystemA) Turn on the AC breaker of the branch circuit.B) Turn on the main AC breaker of the house. Your system will start to generate power in about twominutes.Step 7. Set Up Monitoring SystemRefer to the “DTU User Manual”, “DTU Quick Installation Guide”, and “Quick Installation Guide for S-Miles Cloud” to install the DTU and set up the monitoring system.Product information is subject to change without notice. (Please download reference manuals at )6. Troubleshooting6.1 Troubleshooting List6.2 LED Indicator StatusThe LED flashes five times at start-up. All green flashes (1s gap) indicate normal start-up.*Note:1. The microinverter is powered by DC side. If the LED light is not on, please check the DC side connection. If the connection and input voltage are normal, contact your dealer or hoymiles technical support team.2. All the faults are reported to the DTU. Refer to the local DTU app or Hoymiles Monitoring Platform for more information.6.3 On-site Inspection (For qualified installers only)Troubleshoot a malfunctioning microinverter according to the following steps.6.4 Routine Maintenance1. Only authorized personnel are allowed to carry out the maintenance operations and are responsible for reporting any anomalies.2. Always use personal protective equipment provided by the employer during maintenance operation.3. During normal operation, check the environmental conditions regularly to make sure that the conditions have not changed over time and that the equipment is not exposed to adverse weather conditions and has not been obstructed.4. DO NOT use the equipment if any problems are detected. Restore its working conditions after the fault is fixed.5. Conduct annual inspections on various components, and clean the equipment with a vacuum cleaner or special brushes.6.5 Microinverter Replacement7. Decommission7.1 DecommissionDisconnect the inverter from DC input and AC output, remove all connection cable from the microinverter, and remove the microinverter from the frame.Please pack the microinverter in the original packaging. If the original packaging is no longer available, you can use a carton box that can hold 5 kg and can be fully closed.7.2 Storage and TransportationHoymiles packages are specially designed to protect components so as to facilitate transportation and subsequent handling. Transportation of the equipment, especially by road, must be done in a way that can protect the components (particularly the electronic components) from violent shocks, humidity, vibration, etc. Please dispose of the packaging elements in appropriate ways to avoid unforeseen injury.Please examine the conditions of the components to be transported. Upon receiving the microinverter, you should check the container for any external damage and verify the receipt of all items. Please call the carrier immediately if there is any damage or if any parts are missing. In case of any damage caused to the inverter, contact the supplier or authorized distributor to request a repair/return and ask for instructions regarding the process.The storage temperature range of microinverter is -40 to 85°C.7.3 Disposal• If the equipment is not used immediately or is stored for a long period of time, make sure that it is properly packed. The equipment must be stored indoors with good ventilation and without anypotential damage to the components of the equipment.• Take a complete inspection when restarting the equipment after it has stopped operation for a long time.• Please dispose of the microinverters properly in accordance with local regulations after they are scrapped because of potential harms to the environment.• The maximum open circuit voltage rating of the PV module must be within the operating voltage range of the microinverter.• We recommend that the maximum current rating at MPP should be equal to or less than the maxi-mum input DC current.2. The output DC power of PV module shall not exceed 1.35 times of the output AC power of the microinverter. Refer to “Hoymiles Warranty Terms & Conditions” for more information.*1 Nominal voltage/frequency range can vary depending on local requirements.*2 Refer to local requirements for exact number of microinverters per branch.*3 Hoymiles Monitoring System9.1 Installation Map10.1 WIRING DIAGRAM – 230VAC SINGLE PHASE:。
GForce 中央处理单元CPU可选可插拔端子通讯口CPU222T 主机, 24VDC电源, 8点 输入 24VDC/6点 输出 晶体管, 1个PPI通讯口√1GF-CPU222T-14653CPU222R 主机, 220VAC电源, 8点 输入 24VDC/6点 输出 继电器, 1个PPI通讯口√1GF-CPU222R-14702CPU224T+ 主机,24VDC电源, 14点 输入 24VDC/10点 输出 晶体管, 2个PPI通讯口 带RS485接线端子√2GF-CPU224T+-24863CPU224R+ 主机,220VAC电源, 14点 输入 24VDC/10点 输出 继电器, 2个PPI通讯口 带RS485接线端子√2GF-CPU224R+-24927CPU224TC 主机,24VDC电源, 14点 输入 24VDC/10点 输出 晶体管, 2个PPI通讯口, 1个CAN通讯口√3GF-CPU224TC-241343CPU224RC 主机,220VAC电源, 14点 输入 24VDC/10点 输出 继电器, 2个PPI通讯口, 1个CAN通讯口√3GF-CPU224RC-241452CPU224TH 主机,24VDC电源, 14点 输入 24VDC/10点 输出 晶体管, 3个PPI通讯口√3GF-CPU224TH-241178CPU224RH 主机,220VAC电源, 14点 输入 24VDC/10点 输出 继电器, 3个PPI通讯口√3GF-CPU224RH-241332CPU224TP 主机,24VDC电源, 14点 输入 24VDC/10点 输出 晶体管, 2个PPI通讯口, 6轴运动控制√2GF-CPU224TP-241688CPU224RP 主机,220VAC电源, 14点 输入 24VDC/10点 输出 继电器, 2个PPI通讯口, 4轴运动控制√2GF-CPU224RP-241857CPU224TXP 主机,24VDC电源, 14点 输入 24VDC/10点 输出 晶体管, 2个PPI通讯口,2点模拟量输入/1点模拟量输出√2GF-CPU224TXP-241058CPU224RXP 主机,220VAC电源, 14点 输入 24VDC/10点 输出 继电器, 2个PPI通讯口,2点模拟量输入/1点模拟量输出√2GF-CPU224RXP-241152CPU226T+ 主机,24VDC电源, 24点 输入 24VDC/16点 输出 晶体管, 2个PPI通讯口 带RS485接线端子√2GF-CPU226T+-401043CPU226R+ 主机,220VAC电源, 24点 输入 24VDC/16点 输出 继电器, 2个PPI通讯口 带RS485接线端子√2GF-CPU226R+-401182CPU226TP 主机,24VDC电源, 24点 输入 24VDC/16点 输出 晶体管, 2个PPI通讯口, 6轴运动控制√2GF-CPU226TP-401988CPU226RP 主机,220VAC电源, 24点 输入 24VDC/16点 输出 继电器, 2个PPI通讯口, 4轴运动控制√2GF-CPU226RP-402217CPU226TXP 主机,24VDC电源, 24点 输入 24VDC/16点 输出 晶体管, 2个PPI通讯口,2点模拟量输入/1点模拟量输出√2GF-CPU226TXP-401478CPU226RXP 主机,220VAC电源, 24点 输入 24VDC/16点 输出 继电器, 2个PPI通讯口,2点模拟量输入/1点模拟量输出√2GF-CPU226RXP-401692GForce 扩展模块EM可选可插拔端子订货号EM221 数字量输入模块,8点 输入 24VDC √GM221-I8312EM221 数字量输入模块,16点 输入 24VDC √GM221-I16443EM222T 数字量输出模块,8点 输出 24VDC √GM222-TQ8356EM222R 数字量输出模块,8点 输出 继电器 ×GM222-RQ8402EM222T 数字量输出模块,16点 输出 24VDC √GM222-TQ16518EM222R 数字量输出模块,16点 输出 继电器×GM222-RQ16642EM223T 数字量输入/输出模块,4点 输入 24VDC/4点 输出 24VDC √GM223-I4TQ4374EM223R 数字量输入/输出模块,4点 输入 24VDC/4点 输出 继电器√GM223-I4RQ4384EM223T 数字量输入/输出模块,8点 输入 24VDC/8点 输出 24VDC √GM223-I8TQ8506EM223R 数字量输入/输出模块,8点 输入 24VDC/8点 输出 继电器√GM223-I8RQ8528EM223T 数字量输入/输出模块,16点 输入 24VDC/16点 输出 24VDC √GM223-I16TQ16873EM223R 数字量输入/输出模块,16点 输入 24VDC/16点 输出 继电器√GM223-I16RQ161032EM231 模拟量输入模块,4点 输入 12位精度×GM231-AI4633EM231 热电阻输入模块, 2路 16位精度×GM231-RTD2788GIPENG-吉朋自动化GForce-200系列PLC公开报价2011Q2产品描述订货号价格EM231 热电阻输入模块,4路 16位精度×GM231-RTD41224 EM231 热电偶输入模块, 4路 16位精度×GM231-TC4788 EM232 模拟量输出模块,2点 输出 电压12位精度 电流11位精度√GM232-AQ2684 EM232 模拟量输出模块,4点 输出 电压12位精度 电流11位精度√GM232-AQ41080 EM235 模拟量输入/输出模块, 4点 输入/1点 输出 12位精度×GM235-AI4AQ1837 GForce 附件订货号USB-PPI 编程电缆 USB接口 带驱动光盘 带指示灯 电缆长度3米USB-PPI-901-3DB30117 USB-PPI-ISO 隔离型编程电缆 USB接口 带驱动光盘 带指示灯 电缆长度3米USB-PPI-901-3DB30-ISO225 I/O总线延长电缆,0.5,0.6,0.8米可选IO-EX-290-6AA20113 * 选订可插拔端子的PLC请与销售联系说明,价格视具体型号而定,订货尾号加注-P,如需不标注任何 GIPENG 标识加注-N上海吉朋自动化技术有限公司网址:/。
PC-PPI编程电缆使用手册PC/PPI+编程电缆为RS232到PPI接口(RS485)的转换电缆,适用于西门子S7-200系列PLC,支持PPI协议和自由口通信协议,并可使用MODEM(调制解调器)通过电话线远程通信,光电隔离和内置的防静电、浪涌等瞬态过压保护电路很好地解决了容易烧通信口的问题。
主要技术参数:★隔离电压:1000V直流或3500V脉冲★具有瞬变电压抑制功能,能承受功率高达400W的瞬态过压,能防雷电和抗静电★波特率:0~28.8kbps自适应★最大通信距离:2公里(波特率为9600bps时)★带有电源指示灯和数据收、发指示灯★工作温度:-20~75℃★外形尺寸:103×50×26,电缆总长度3米产品的结构:PC-RS232插头和PPI-RS485插头的信号定义如下:PPI-RS485插头PC-RS232插头针号信号说明针号信号说明2 24V电源负(RS485逻辑地)2 接收数据RD(从PC/PPI输出)3 RS485信号B(RxD/TxD+)3 发送数据SD(输入到PC/PPI)7 24V电源正4 数据终端就绪DTR8 RS485信号A(RxD/TxD-)5 地(RS232逻辑地)9 协议选择7 请求发送RTS产品的使用:1、PLC与电脑连接作PPI或自由口通信、编程:只需将PC/PPI+电缆的RS485插头插入S7-200PLC的编程口,RS232插头插入电脑的RS232口,并在编程软件上选择对应的COM口号,将10bit、11bit选择开关拨到11bit位置及可。
本PC/PPI+电缆的波特率为0~28.8kbps自动适应,无需设置。
2、PLC与电脑的长距离通信:当长距离通信时PC/PPI+需另外接电源,并且在RS485插头的3、8之间并接120欧终端电阻以消除信号反射,如下图所示:2、PLC通过电话线与电脑的远程通信:PC/PPI+的RS232端与MODEM连接时需自制一个DCE/DTE交叉转接头,并根据是10位还是11位MODEM将电缆上的开关拨到对应位置。
Development of Hybrid Electric Drive SystemUsing a Boost Converter
Masaki OkamuraEiji SatoShoichi SasakiTOYOTA MOTOR CORPORATION1, Toyota-cho, Toyota, Aichi, 471-8572, JapanPhone/ Fax : +81-565-72-9071/9147
AbstractToyota introduced a new generation of hybrid vehicle to the market in September of 2003. The new Prius,equipped with a new Toyota-developed inverter system, is capable of outputting more power than theconventional systems. One of the strong points of this new system is that a Boost Converter has beenplaced between the inverter and the battery. The Boost Converter is capable of raising the voltage fromthe battery, enabling the inverter to drive a high power output motor. The Toyota Hybrid System (THS),consists of a high power motor, generator, and a battery of relatively lower power. When the BoostConverter was adopted in the THS, it was possible to keep bulk and cost of the additional unit in thesystem to a minimum, by letting the Boost Converter function to the same power level as the battery. Thecontrol system of the Boost Converter consists simply of a PI controller. By using existing sensors andmicroprocessors, it was possible to develop a new system at no additional costs. The Boost Converter’scontrol system achieves high efficiency by optimizing its output voltage according to the relative state ofthe motor and the generator. Toyota was able to achieve a 50% improvement in the motor power outputwith the new Boost Converter, while keeping a similar complexity of the conventional system. As of now,Toyota plans to spread the development to other new hybrid vehicles.__
Keywords: Hybrid, Electric Drive, Converter, Inverter, Control System
Figure1: TOYOTA NEW PRIUS1. IntroductionToyota introduced the “Prius” in December 1997, the world’s first mass-produced hybrid vehicle, whichis equipped with the Toyota Hybrid System (THS). The PRIUS has gained a reputation as a highlyinnovative vehicle, and its cumulative worldwide sales have exceeded 110,000 units. THS has continuedto evolve, and Toyota has developed the concept of Hybrid Synergy Drive in 2003. Based on this concept,Toyota has developed a new-generation Toyota Hybrid System called THS II. This system achieves ahigh level of compatibility between environmental performance and power thanks to an 1.5 times increasein the motor output, a boost of the power supply voltage, and significant advances in the control system.Toyota introduced the new PRIUS in September 2003, equipped with THS II. In the following, wedescribe the Hybrid Electric Drive System using a Boost Converter, which is one of the new technologiesof THSII.
2. Objective of THSII developmentAutomobiles in the future must increase both environmental and safety performances, whileimproving the all-important motor vehicle characteristic of being fun to drive. To achievesuperior driving performance, which is the basis for driving enjoyment, the conventionalapproach has been to increase output and torque by increasing engine displacement or usingsupercharging. However, this approach decreases fuel efficiency, making it difficult to achievecompatibility of environmental performance and power. In other words, fuel efficiency andpower are in a trade-off relationship. By using the Toyota Hybrid System (THS) in the Prius,Toyota was able to find the solution to this problem. THS, which is a Series/Parallel HybridSystem, contains a power split device that splits power into two paths. In one path (Mechanicalpath), the power from the gasoline engine is directly transmitted to the vehicle's wheels. In theother path (Electrical path), the power from the engine is converted into electricity by a generatorto drive an electric motor or to charge the battery. THS requires no external charging, unlike EVs(Electric Vehicles). It is therefore usable with existing infrastructure. THS’s configuration,through the use of a motor having high low-speed torque and high output, manages idling stop,stopping of the gasoline engine while the vehicle is running, running of the vehicle using theelectric motor, motor assist at any speed, and highly efficient energy regeneration, without usinga clutch or transmission.
Figure 2: System ConfigurationElectrical pathMechanical path